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首页> 外文期刊>Metallurgical and Materials Transactions A >Nb-Base FS-85 Alloy as a Candidate Structural Material for Space Reactor Applications: Effects of Thermal Aging
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Nb-Base FS-85 Alloy as a Candidate Structural Material for Space Reactor Applications: Effects of Thermal Aging

机译:Nb基FS-85合金作为空间反应堆应用的候选结构材料:热老化的影响

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摘要

The proposed uses of fission reactors for manned or deep space missions have typically relied on the potential use of refractory metal alloys as structural materials. Throughout the history of these programs, a leading candidate has been Nb-1Zr, due to its good fabrication and welding characteristics. However, the less-than-optimal creep resistance of this alloy has encouraged interest in the more complex FS-85 (Nb-28Ta-10W-1Zr) alloy. Despite this interest, only a relatively small database exists for the properties of FS-85. Database gaps include the potential microstructural instabilities that can lead to mechanical property degradation. In this work, changes in the microstructure and mechanical properties of FS-85 were investigated following 1100 hours of thermal aging at 1098, 1248, and 1398 K. The changes in electrical resistivity, hardness, and tensile properties between the as-annealed and aged materials are compared. Evaluation of the microstructural changes was performed through optical microscopy (OM), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). The development of intragranular and grain-boundary precipitation of Zr-rich compounds as a function of aging temperature was followed. Brittle tensile behavior was measured in the material aged at 1248 K, while ductile behavior occurred in samples aged above and below this temperature. The effect of temperature on the under- and overaging of the grain-boundary particles is believed to have contributed to the mechanical property behavior of the aged materials.
机译:裂变反应堆用于载人或深空飞行任务的拟议用途通常依赖于难熔金属合金作为结构材料的潜在用途。在这些程序的整个历史中,由于其良好的制造和焊接特性,Nb-1Zr一直是领先的候选者。但是,这种合金的抗蠕变性能不理想,这引起了人们对更复杂的FS-85(Nb-28Ta-10W-1Zr)合金的兴趣。尽管有这种兴趣,但对于FS-85的属性仅存在一个相对较小的数据库。数据库的空白包括可能导致机械性能下降的潜在微结构不稳定性。在这项工作中,研究了FS-85在1098、1248和1398 K进行1100小时热老化后的微观结构和力学性能的变化。退火和老化后电阻率,硬度和拉伸性能的变化比较材料。通过光学显微镜(OM),扫描电子显微镜(SEM)和透射电子显微镜(TEM)进行微观结构变化的评估。随老化温度的变化,研究了富含Zr化合物的晶内和晶界沉淀的发展。在1248 K时效的材料中测得了脆性拉伸行为,而在高于和低于此温度时效的样品中发生了延性行为。认为温度对晶界颗粒的过时效和过时效的影响有助于时效材料的机械性能。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第4期|838-855|共18页
  • 作者单位

    Oak Ridge National Laboratory Materials Science and Technology Division Oak Ridge TN 37831-6138 USA;

    Oak Ridge National Laboratory Materials Science and Technology Division Oak Ridge TN 37831-6138 USA;

    Oak Ridge National Laboratory Materials Science and Technology Division Oak Ridge TN 37831-6138 USA;

    Oak Ridge National Laboratory Materials Science and Technology Division Oak Ridge TN 37831-6138 USA;

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